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通过椭圆偏振法测定凝血因子VIII及其轻链与磷脂酰丝氨酸/磷脂酰胆碱双层膜的结合。

Binding of blood coagulation factor VIII and its light chain to phosphatidylserine/phosphatidylcholine bilayers as measured by ellipsometry.

作者信息

Spaargaren J, Giesen P L, Janssen M P, Voorberg J, Willems G M, van Mourik J A

机构信息

Department of Blood Coagulation, Central Laboratory of The Netherlands Red Cross Blood Transfusion Service, Amsterdam.

出版信息

Biochem J. 1995 Sep 1;310 ( Pt 2)(Pt 2):539-45. doi: 10.1042/bj3100539.

Abstract

Factor VIII is a plasma protein which plays an essential role in the coagulation system. When assembled with the enzyme Factor IXa on a phospholipid membrane, it functions as a cofactor in the enzyme complex that cleaves the zymogen Factor X to Factor Xa. We studied the binding of both Factor VIII and the Factor VIII light chain to planar phospholipid bilayers consisting of 25% dioleoylphosphatidylserine and 75% dioleoylphosphatidylcholine (PSPC) by ellipsometry. Equilibrium-binding studies revealed that both Factor VIII and its light chain bind with high affinity to PSPC bilayers. The binding affinity of Factor VIII, with a dissociation constant Kd of 0.24 nM, was comparable with that of the Factor VIII light chain (Kd 0.49 nM). Maximal binding was 2.3 mmol of protein per mol of PSPC for Factor VIII and 7.1 mmol of protein per mol of PSPC for the Factor VIII light chain. Adsorption kinetics of both Factor VIII and its light chain conformed to the classical Langmuir adsorption model yielding dissociation constants calculated from the rates of adsorption that were similar to those obtained by equilibrium-binding studies. In contrast, measurements of rates of desorption revealed a deviation from those expected for a single class of binding sites. The desorption rate of Factor VIII increased with increasing residence time on the lipid membrane. This indicates transition of Factor VIII to a configuration with a lower binding affinity. As this time-dependent change in affinity could affect the validity of the measurement of binding parameters, in particular equilibrium-binding determinations carried out on a long timescale, binding affinity was also estimated from adsorption kinetics at half-maximal surface coverage, a relatively rapid procedure for the determination of the affinity. A Kd of 0.087 nM was obtained under these conditions. Measurement of equilibrium binding to small PSPC vesicles, a system in which equilibrium is rapidly attained, resulted in similar binding parameters (Kd = 0.13 nM and a maximal binding of 2.8 mmol of protein per mol of PSPC). These data confirm the results of equilibrium binding to planar bilayers. Taken together, our results indicate that Factor VIII, by means of its 80 kDa light chain, binds to PSPC bilayers with a dissociation constant below the concentration of Factor VIII in plasma and therefore may readily bind to exposed phospholipid membranes under physiological conditions.

摘要

凝血因子 VIII 是一种血浆蛋白,在凝血系统中发挥着至关重要的作用。当与酶凝血因子 IXa 在磷脂膜上组装时,它在将酶原凝血因子 X 裂解为凝血因子 Xa 的酶复合物中作为辅因子发挥作用。我们通过椭圆偏振法研究了凝血因子 VIII 和凝血因子 VIII 轻链与由 25% 二油酰磷脂酰丝氨酸和 75% 二油酰磷脂酰胆碱(PSPC)组成的平面磷脂双层的结合。平衡结合研究表明,凝血因子 VIII 及其轻链均以高亲和力与 PSPC 双层结合。凝血因子 VIII 的结合亲和力,解离常数 Kd 为 0.24 nM,与凝血因子 VIII 轻链的结合亲和力(Kd 0.49 nM)相当。凝血因子 VIII 的最大结合量为每摩尔 PSPC 2.3 毫摩尔蛋白质,凝血因子 VIII 轻链为每摩尔 PSPC 7.1 毫摩尔蛋白质。凝血因子 VIII 及其轻链的吸附动力学符合经典的朗缪尔吸附模型,根据吸附速率计算出的解离常数与通过平衡结合研究所获得的解离常数相似。相比之下,解吸速率的测量结果显示与单一类结合位点预期的结果存在偏差。凝血因子 VIII 的解吸速率随着在脂质膜上停留时间的增加而增加。这表明凝血因子 VIII 转变为具有较低结合亲和力的构象。由于这种亲和力的时间依赖性变化可能会影响结合参数测量的有效性,特别是在长时间尺度上进行的平衡结合测定,结合亲和力也通过在半最大表面覆盖率下的吸附动力学进行估计,这是一种相对快速的亲和力测定方法。在这些条件下获得的 Kd 为 0.087 nM。对小 PSPC 囊泡的平衡结合测量,这是一个能快速达到平衡的系统,得到了相似的结合参数(Kd = 0.13 nM,每摩尔 PSPC 的最大结合量为 2.8 毫摩尔蛋白质)。这些数据证实了与平面双层平衡结合的结果。综上所述,我们的结果表明,凝血因子 VIII 通过其 80 kDa 的轻链,以低于血浆中凝血因子 VIII 浓度的解离常数与 PSPC 双层结合,因此在生理条件下可能很容易与暴露的磷脂膜结合。

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